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Gaussian-beam modeling of ultrasonic transducers using near-field experimental data

机译:利用近场实验数据对超声换能器进行高斯光束建模

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摘要

We wish to develop a model for the pitch-catch response of real transducers which is both accurate and efficient. Wen and Breazeale [1, 2] have shown that the fields of a uniformly active, planar disk transducer can be modelled by a small number of coaxial Gaussian beams (eg, 10 or 15). Margetan, Thompson and Gray [3] have similarly modelled the fields of a uniformly active, planar disk transducer in terms of Hermite Gaussian beams, and further picked the radius of the ideal transducer to match the main lobe of experimental data collected with a very small receiver,to approximate a point probe. Here we use the expansion of Wen and Breazeale and reciprocity to model the pitch-catch response of two transducers facing each other and having parallel axes, as a function of the displacement vector between the two transducers. Further, we fit this pitch-catch model directly to experimental pitch-catch data by choosing the parameters of the Gaussian beams, without assuming that the transducers are uniformly active, planar disks. Finally we show that the model developed by fitting over one set of displacements accurately describes the experiments over a disjoint set.
机译:我们希望为真实换能器的音高-捕捉响应建立一个模型,该模型既准确又有效。 Wen和Breazeale [1,2]已经表明,可以通过少量同轴的高斯光束(例如10或15)来模拟均匀活动的平面磁盘换能器的场。 Margetan,Thompson和Gray [3]类似地用Hermite高斯光束对均匀活动的平面盘式换能器的场进行了建模,并进一步选择了理想换能器的半径以匹配非常小的采集实验数据的主瓣。接收器,以逼近点探针。在这里,我们使用Wen和Breazeale的展开以及互易来建模两个彼此面对且具有平行轴的换能器的俯仰捕捉响应,作为两个换能器之间的位移矢量的函数。此外,我们通过选择高斯光束的参数将这种音高-捕获模型直接拟合到实验音高-捕获数据,而无需假设换能器是均匀活动的平面磁盘。最后,我们证明了通过拟合一组位移而开发的模型可以准确地描述不相交集的实验。

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